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A methodology to support robotic polishing of moulds integrated with CAD/CAM (2023)
Journal Article
Wang, K., Ding, L., Dailami, F., & Matthews, J. (in press). A methodology to support robotic polishing of moulds integrated with CAD/CAM. Journal of Advanced Manufacturing Systems, https://doi.org/10.1142/S021968672450015X

Typically, the final process in the manufacture of molds is mechanical polishing, a process predominantly conducted manually. This is an important process step to improve the surface quality of the mold without affecting the geometry of the cavity. C... Read More about A methodology to support robotic polishing of moulds integrated with CAD/CAM.

GA-AHP Method to support robotic polishing process planning (2022)
Journal Article
Wang, K., Ding, L., Dailami, F., & Matthews, J. (2022). GA-AHP Method to support robotic polishing process planning. Digital Manufacturing Technology, 2(2), 23-44. https://doi.org/10.37256/dmt.2220221513

The finishing stage of mould manufacturing is generally completed via mechanical polishing, manual conducted. Not only is this the most expensive phase of the process but also is currently struggling with a deficit of skilled workers. To address thes... Read More about GA-AHP Method to support robotic polishing process planning.

The analysis of tool wear mechanisms in the machining of pre-sintered zirconia dental crowns (2019)
Journal Article
Irvine, D., Goh, M., Dailami, F., & Matthews, J. (2019). The analysis of tool wear mechanisms in the machining of pre-sintered zirconia dental crowns. Procedia Manufacturing, 38, 1026-1033. https://doi.org/10.1016/j.promfg.2020.01.188

The growth of Digital Dentistry has opened new potentials in the dental restoration sector where personalised restorations could be made in a much shorter time than before. Zirconia has been widely used due to its excellent wear properties and bio-co... Read More about The analysis of tool wear mechanisms in the machining of pre-sintered zirconia dental crowns.

Towards collaborative robotic polishing of mould and die sets (2019)
Journal Article
Wang, K., Dailami, F., & Matthews, J. (2019). Towards collaborative robotic polishing of mould and die sets. Procedia Manufacturing, https://doi.org/10.1016/j.promfg.2020.01.137

Dies and moulds are fundamental elements in the manufacturing of a wide variety of products. The surface polishing of dies and moulds with complex features largely relies upon time-consuming manual work of skilled workers and, as a result of the dimi... Read More about Towards collaborative robotic polishing of mould and die sets.

Modelling of cutting induced workpiece temperatures for dry milling (2006)
Journal Article
Richardson, D. J., Keavey, M. A., & Dailami, F. (2006). Modelling of cutting induced workpiece temperatures for dry milling. International Journal of Machine Tools and Manufacture, 46(10), 1139-1145. https://doi.org/10.1016/j.ijmachtools.2005.08.008

A thermal model has been developed that predicts machining induced workpiece temperatures for peripheral milling. The model was developed to determine the magnitude and distribution of workpiece temperatures for dry milling of aerospace aluminium all... Read More about Modelling of cutting induced workpiece temperatures for dry milling.